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All-optical DNA variant discovery utilizing extended DV-curve-based wavelength modulation

机译:所有光学DNA变体发现利用扩展DV曲线的波长调制

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This paper presents a novel optical processing approach for exploring genome sequences built upon an optical correlator for global alignment and the extended dual-vector-curve-curve (DV-curve) method for local alignment. To overcome the problem of the traditional DV-curve method for presenting an accurate and simplified output, we propose the hybrid amplitude wavelength polarization optical DV-curve (HAWPOD) method, built upon the DV-curve method, to analyze genome sequences in three steps: DNA coding, alignment, and post-analysis. For this purpose, a tunable graphene-based color filter is designed for wavelength modulation of optical signals. Moreover, all-optical implementation of the HAWPOD method is developed, while its accuracy is validated through numerical simulations in LUMERICAL FDTD. The results express that the proposed method is much faster than its electrical counterparts. (C) 2018 Optical Society of America.
机译:本文介绍了一种用于探索基因组序列的新型光学处理方法,用于局部对准的全局对准和扩展的双向矢量曲线(DV曲线)方法进行局部对准。 为了克服传统的DV曲线方法的出现呈现精确简化的输出,提出了基于DV曲线方法的混合幅度波长偏振光学DV曲线(HAWPOD)方法,分析了三个步骤的基因组序列 :DNA编码,对准和分析后。 为此目的,设计了一种基于石墨烯的滤色器,用于光学信号的波长调制。 此外,开发了HAVPOD方法的全光实现,而通过Lumerical FDTD中的数值模拟验证了其精度。 结果表明,所提出的方法比其电气对应物快得多。 (c)2018年光学学会。

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